Abstract:
PROBLEM TO BE SOLVED: To provide an input device for achieving an information processing device convenient to be carried and having high picture quality. SOLUTION: An operation region between a user and a monitor part 12 is scanned by deflecting scanning rays 15R and 15L from optical scan parts 14R and 14L, the selected position pointed by a finger is optically detected and specified, and the selected position is outputted in relation to a specific key in the key arrangement. A light absorbing part 18 also serving as a palm- rest 19 is disposed at a position opposite from the optical scan parts 14R and 14L, so that the stray light and unnecessary reflected light are absorbed. In addition, a key arrangement table 17 makes it easy to know visually what letter is being inputted. As for the deflection of the scanning rays 15R and 15L, a thermal driven type MEMS mirror with the bimorph structure may be used, for example.
Abstract:
PROBLEM TO BE SOLVED: To provide an electric connection device capable of electrically connecting to an organic electroluminescent element without giving thermal damage to it when a second substrate is connected to an electrode inside a first substrate having the electrode connected to the organic electroluminescent element, and provide electronic equipment having the electric connection device. SOLUTION: This electric connection device 600 has the organic electroluminescent element and a connector 700 for electrically connecting the second substrate 50 to the electrode inside the first substrate 121 having the electrode connected to the organic electroluminescent element, and a connector terminal 710 of the connector 700 is electrically connected to the electrode of the first substrate 121 by ultrasonic welding. COPYRIGHT: (C)2003,JPO
Abstract:
PROBLEM TO BE SOLVED: To provide an organic EL element that has a high luminance and a long life. SOLUTION: The positive electrode 18 for hole injection is formed of a carbon film, for example, a diamond like carbon(DLC) film that is added with nitrogen as impurities. The DLC film is made by employing a physical vapor deposition method such as a sputtering method and a vacuum arc method, but this DLC film does not include a film which is made only of a graphite structure (crystalline structure having SP2 bonding) used for X-ray diffraction or the like. This is a film of amorphous shape in which mainly SP3 bonding and SP2 bonding are mixed. Since a DLC added with nitrogen is used for the positive electrode 18, hole injection efficiency is improved. On the other hand, the negative electrode 13 is made of a transparent electrode layer, for example, an Indium Tin Oxide(ITO) layer. Emission from the organic luminous layer 16 is taken out from the opening part 12A that is provided at the auxiliary electrode 12 of the negative electrode 13 side.
Abstract:
PROBLEM TO BE SOLVED: To provide a color filter device for image projection and an image projecting device in which the cross section area of a color filter portion to the cross section area of the passage of a necessary light beam can be reduced and which can be miniaturized. SOLUTION: The image projecting device 10 is provided with a light source part 11, a color wheel part 14, a digital light valve 18, and a projection lens part 19. The color wheel part 14 includes a rotatable body part. The body part has six side face areas, and are arranged so as to cross the passage of the light beam and an arbitrary side face area at right angles. Three kinds of color filters are provided in the side face area, and two kinds of color filters are located on the passage of the light beam. The color filter located on the passage of the light beam from the light source part 11 is switched by rotating the body part, and thereby only the light beam of a specific wavelength region is transmitted. This light beam is reflected by a DMD which is an example of a digital light valve 18. An image corresponding to the reflected light is projected on a screen by a projection lens part 19.
Abstract:
PROBLEM TO BE SOLVED: To provide a film deposting method in which ions sufficiently react on a plastic substrate to deposit desired film, and an apparatus thereof. SOLUTION: Outside a vacuum chamber 1, nitrogen ions 17 are generated by an ion shower source 3, carbon ions 38 are generated in a cathodic arc source 2, ion beams 17A, 38A are introduced in the vacuum chamber 1 to irradiate a substrate 4 disposed in the chamber, and the negative pulse-like voltage is applied to the substrate 4. The reaction of the nitrogen ions 17 with the carbon ions 38 is increased to form a nitrided carbon film with sufficient reaction of both ions on the substrate 4.
Abstract:
PROBLEM TO BE SOLVED: To provide a surface treatment system capable of applying surface treatment by injecting ions by the plasma injection method even if the object of surface treatment is composed of an insulator. SOLUTION: The system is provided with an ion generation equipment 6 for generating ions and a pulse power source 8 for applying pulsative voltage to an insulator (material to be treated) 2. Ions generated by the ion generation equipment 6 are introduced into a vacuum chamber 3, where a plasma containing the ions to be injected is generated. By applying, within the plasma, the pulsative voltage containing positive pulse voltage and negative pulse voltage to the insulator from the pulse power source 8, the ions contained in the plasma are implanted into the insulator.
Abstract:
PROBLEM TO BE SOLVED: To prevent generation of a large difference between a part having an electrode and a part having no electrode about the lowering value of reflection factor caused at a projecting part of a fingerprint by forming a conductive film at a part of a total reflection surface and also controlling the thickness of the conductive film within a specific range. SOLUTION: A pair of biological detecting transparent electrodes 21 are placed close to each other on a total reflection surface 4a of a prism 4 with a prescribed distance secured between them. Every electrode 21 consists of a conductive film such as in ITO film, an NES (trade name) film, etc. Then thickness d1 of the conductive film of the electrode 21 is controlled within a range or p×a-25× -n0 sin θ0 )] is satisfied (λ: wavelength of light, n1 : refractive index of electrode 21, n0 : refractive index of prism 4, θ0 : incident angle of light to total reflection surface 4a). In addition, a dielectric film 22 is formed on an entire surface 4a including the electrode 21 to protect this electrode.
Abstract:
PROBLEM TO BE SOLVED: To reproduce two kinds of recording media without requiring a complicated mechanism. SOLUTION: A laser beam emitted from a LD(lead diode) 21 with a spread angle θ1 and changed to θ1a by a collimator lens 24, is made incident on an objective lens 28 through an optical path joining/splitting prism 27, converged by the objective lens 28 and focused on a recording surface 41A through the substrate 41B of an optical disk 41 (e.g. DVD(digital video disk)). On the other hand, a laser beam emitted from a LD 30 with a spread angle θ2 which is changed to θ2a larger than α1a (θ2a >θ1a ) is made incident on the objective lens 28 through the optical path converging/splitting prism 27, converged by the objective lens 28 and focused on a recording surface 42A through the substrate 42B of an optical disk 42 (e.g. DVD).
Abstract:
PROBLEM TO BE SOLVED: To solve problems, such as contamination resistance, slipperiness and wear resistance, by providing the antireflection filter with a transparent base material, antireflection films and a surface treatment layer formed with the film of surface treating agent contg. a specific phosphazene compd. SOLUTION: This antireflection filter has the transparent base material 2, a single or double layers of the antireflection films 3 disposed on the transparent base material 2 and the surface treatment layer formed with the film of the surface treating agent 6 expressed by formula on the surface of the outermost partition film of the antireflection films 3. In the formula, substituents R, Q denote long-chain hydrocarbon group or fluoropolyether and (n) is a positive integer of
Abstract:
PROBLEM TO BE SOLVED: To obtain a display device provided with a filter having reflection preventive property, excellent in resistances to soiling and scuffing and in workability, etc. SOLUTION: This display device is provided with the filter having reflection preventive property wherein the outermost surface of a single layered or multi- layered reflection preventive film 2 formed on a glass base 1 is covered with a compound 3 consisting of perfluoro-polyether or its derivative having a polar group at the terminal.